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Motor abundance supports multitasking while standing

机译:站立时多动能支持多任务

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摘要

Many activities require simultaneous performance of multiple tasks. Motor redundancy may provide a key mechanism for multitasking, ensuring minimal inter-task interference. This study investigated the effect of performing two supra-postural tasks on postural stability. The component of joint configuration variance (JCV) reflecting flexible joint combinations (VUCM) that stabilize the center of mass (CoM) position and the component of JCV leading to variability (VORT) of the CoM were determined using the Uncontrolled Manifold (UCM) approach. Subjects executed a targeting task alone or in combination with a ball-balancing task. UCM analysis revealed that the joints were coordinated such that their combined variance reflected primarily VUCM, without a substantial effect on CoM position stability. Evidence for this flexible control strategy increased when the ball-balancing task was added to targeting, or when the index of difficulty of targeting increased, both without leading to substantial increases in VORT or CoM position variance. The increase in joint variance when performing additional tasks without affecting adversely CoM position stability supports the hypothesis that the nervous system takes advantage of available motor redundancy for the successful performance of multiple tasks concurrently. Future work is needed to investigate the limits of this control scheme.
机译:许多活动需要同时执行多个任务。电机冗余可以为多任务提供关键机制,从而确保最小的任务间干扰。这项研究调查了执行两个姿势上任务对姿势稳定性的影响。使用不受控制的歧管(UCM)方法确定了反映稳定关节中心(CoM)位置的柔性关节组合(VUCM)的关节构形变化(JCV)组件和导致CoM变异性(VORT)的JCV组件。受试者单独执行目标任务或与平衡任务结合执行。 UCM分析显示,关节经过协调,以使它们的组合方差主要反映VUCM,而对CoM位置稳定性没有实质性影响。当将平衡任务添加到目标中或目标的难度指数增加时,这种灵活控制策略的证据就增加了,而这两种情况都不会导致VORT或CoM位置方差大幅增加。当执行其他任务而不影响CoM位置稳定性时,关节方差的增加支持了以下假设:神经系统利用可用的运动冗余来同时成功执行多个任务。需要进一步的工作来研究此控制方案的限制。

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